Denial Of Service
Monthly
In Modem, there is a possible system crash due to incorrect error handling. This could lead to remote denial of service, if a UE has connected to a rogue base station controlled by the attacker, with no additional execution privileges needed. [CVSS 6.5 MEDIUM]
Nr15 versions up to - is affected by improper check for unusual or exceptional conditions (CVSS 6.5).
In Modem, there is a possible read of uninitialized heap data due to an uncaught exception. This could lead to remote denial of service, if a UE has connected to a rogue base station controlled by the attacker, with no additional execution privileges needed. [CVSS 6.5 MEDIUM]
iccDEV ICC color profile processing library versions 2.3.1 and below contain an infinite loop in the CalcProfileID function that allows unauthenticated remote attackers to cause denial of service. Public exploit code exists for this vulnerability, and affected systems should upgrade to version 2.3.1.1 or later to remediate the issue.
AIOHTTP is an asynchronous HTTP client/server framework for asyncio and Python. In versions 3.13.2 and below, handling of chunked messages can result in excessive blocking CPU usage when receiving a large number of chunks. [CVSS 5.3 MEDIUM]
AIOHTTP is an asynchronous HTTP client/server framework for asyncio and Python. Versions 3.13.2 and below allow for an infinite loop to occur when assert statements are bypassed, resulting in a DoS attack when processing a POST body. [CVSS 7.5 HIGH]
Denial of service in Anthropic's Model Context Protocol (MCP) TypeScript SDK versions up to and including 1.25.1 allows remote attackers to hang the Node.js event loop by submitting a crafted URI to the UriTemplate matcher. The dynamically built regex for RFC 6570 exploded array patterns contains nested quantifiers that trigger catastrophic backtracking, pinning CPU and rendering the process unresponsive. Publicly available exploit code exists, though EPSS is very low (0.02%) and it is not listed in CISA KEV, so real-world exploitation currently appears theoretical rather than widespread.
Coolify is an open-source and self-hostable tool for managing servers, applications, and databases. In Coolify vstarting with version 4.0.0-beta.434, the /login endpoint advertises a rate limit of 5 requests but can be trivially bypassed by rotating the X-Forwarded-For header. [CVSS 4.3 MEDIUM]
Evershop contains a vulnerability that allows attackers to exhaust the application server's resources via the "GET /images" API (CVSS 7.5).
An issue was discovered in the Camera in Samsung Mobile Processor and Wearable Processor Exynos 1330, 1380, 1480, 2400, 1580, 2500. A race condition in the issimian device driver results in a double free, leading to a denial of service. [CVSS 5.9 MEDIUM]
An issue was discovered in the Camera in Samsung Mobile Processor and Wearable Processor Exynos 1330, 1380, 1480, 2400, 1580, 2500. An invalid kernel address dereference in the issimian device driver leads to a denial of service. [CVSS 6.2 MEDIUM]
An issue was discovered in the Camera in Samsung Mobile Processor and Wearable Processor Exynos 1330, 1380, 1480, 2400, 1580, 2500. A race condition in the issimian device driver results in an out-of-bounds access, leading to a denial of service. [CVSS 5.1 MEDIUM]
An issue was discovered in L2 in Samsung Mobile Processor, Wearable Processor, and Modem Exynos 980, 990, 850, 1080, 2400, 1580, 9110, W920, W930, Modem 5123, and Modem 5400. Incorrect handling of RRC packets leads to a Denial of Service. [CVSS 7.5 HIGH]
An issue was discovered in the Camera in Samsung Mobile Processor and Wearable Processor Exynos 1330, 1380, 1480, 2400, 1580, and 2500. Improper validation of user-space input in the issimian device driver leads to information disclosure and a denial of service. [CVSS 7.1 HIGH]
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
An integer underflow vulnerability exists in the `nextstate()` function in `gpsd/packet.c` of gpsd versions prior to commit `ffa1d6f40bca0b035fc7f5e563160ebb67199da7`. [CVSS 7.5 HIGH]
gpsd (before commit dc966aa) has a heap buffer overflow in the NMEA2000 satellite view handler (PGN 129540). A malicious satellite count value overwrites the skyview array, enabling code execution on GPS daemon processes. PoC available, patch available.
A buffer overflow vulnerability has been reported to affect several QNAP operating system versions. If a remote attacker gains an administrator account, they can then exploit the vulnerability to modify memory or crash processes. [CVSS 6.5 MEDIUM]
A buffer overflow vulnerability has been reported to affect License Center. If a remote attacker gains an administrator account, they can then exploit the vulnerability to modify memory or crash processes. [CVSS 6.5 MEDIUM]
A buffer overflow vulnerability has been reported to affect several QNAP operating system versions. If a remote attacker gains an administrator account, they can then exploit the vulnerability to modify memory or crash processes. [CVSS 6.5 MEDIUM]
A buffer overflow vulnerability has been reported to affect several QNAP operating system versions. If a remote attacker gains an administrator account, they can then exploit the vulnerability to modify memory or crash processes. [CVSS 6.5 MEDIUM]
A buffer overflow vulnerability has been reported to affect several QNAP operating system versions. If a remote attacker gains a user account, they can then exploit the vulnerability to modify memory or crash processes. [CVSS 8.1 HIGH]
A buffer overflow vulnerability has been reported to affect several QNAP operating system versions. If a remote attacker gains a user account, they can then exploit the vulnerability to modify memory or crash processes. [CVSS 8.1 HIGH]
A buffer overflow vulnerability has been reported to affect several QNAP operating system versions. If a remote attacker gains a user account, they can then exploit the vulnerability to modify memory or crash processes. [CVSS 8.1 HIGH]
A weakness has been identified in Open5GS up to 2.7.6. Affected by this issue is the function sgwc_s5c_handle_create_session_response of the file src/sgwc/s5c-handler.c of the component GTPv2-C Flow Handler. [CVSS 3.3 LOW]
A security flaw has been discovered in Open5GS up to 2.7.6. Affected by this vulnerability is the function ogs_gtp2_parse_bearer_qos in the library lib/gtp/v2/types.c of the component Bearer QoS IE Length Handler. [CVSS 3.3 LOW]
A vulnerability was identified in Open5GS up to 2.7.6. Affected is the function sgwc_s11_handle_create_session_request of the file src/sgwc/s11-handler.c of the component GTPv2-C F-TEID Handler. [CVSS 3.3 LOW]
Signal K Server is a server application that runs on a central hub in a boat. A Denial of Service (DoS) vulnerability in versions prior to 2.19.0 allows an unauthenticated attacker to crash the SignalK Server by flooding the access request endpoint (`/signalk/v1/access/requests`). [CVSS 7.5 HIGH]
Release of Invalid Pointer or Reference vulnerability was discovered in fs/inode/fs_inoderemove code of the Apache NuttX RTOS that allowed root filesystem inode removal leading to a debug assert trigger (that is disabled by default), NULL pointer dereference (handled differently depending on the target architecture), or in general, a Denial of Service. [CVSS 6.5 MEDIUM]
NanoMQ MQTT Broker (NanoMQ) is an all-around Edge Messaging Platform. Versions prior to 0.24.5 have a Heap-Use-After-Free (UAF) vulnerability within the MQTT bridge client component (implemented via the underlying NanoNNG library). [CVSS 4.9 MEDIUM]
Rejected reason: To maintain compliance with CNA rules, we have rejected this CVE record because it has not been used. No vendor patch available.
In the Linux kernel, the following vulnerability has been resolved: blk-cgroup: Fix NULL deref caused by blkg_policy_data being installed before init blk-iocost sometimes causes the following crash:. No vendor patch available.
A flaw has been found in omec-project UPF up to 2.1.3-dev. This affects the function handleSessionEstablishmentRequest of the file /pfcpiface/pfcpiface/messages_session.go of the component PFCP Session Establishment Request Handler. This manipulation causes null pointer dereference. The attack may be initiated remotely. The exploit has been published and may be used. The project was informed of the problem early through an issue report but has not responded yet.
Linux kernel iomap subsystem fails to allocate the s_dio_done_wq workqueue for asynchronous read operations, causing read error completions deferred by commit 222f2c7c6d14 to lack proper execution context and potentially leading to information disclosure or system instability. The vulnerability affects Linux kernel versions where the read error completion deferral was implemented without corresponding workqueue allocation for async reads. With an EPSS score of 0.01% and no evidence of active exploitation, this is a low-probability but correctness-critical issue affecting async I/O error handling on affected kernel versions.
In the Linux kernel, the following vulnerability has been resolved: NFSv4/pNFS: Clear NFS_INO_LAYOUTCOMMIT in pnfs_mark_layout_stateid_invalid Fixes a crash when layout is null during this call stack: write_inode -> nfs4_write_inode -> pnfs_layoutcommit_inode pnfs_set_layoutcommit relies on the lseg refcount to keep the layout around. Need to clear NFS_INO_LAYOUTCOMMIT otherwise we might attempt to reference a null layout.
TLS renegotiation exhaustion in Keycloak allows unauthenticated remote denial of service via repeated client-initiated TLS 1.2 renegotiation requests that drain CPU resources. Affects Red Hat Single Sign-On deployments using TLS 1.2 with client renegotiation enabled. EPSS exploitation probability and KEV status not available at analysis time; CVSS 7.5 (High) reflects network-accessible attack with low complexity but availability impact only. Red Hat has issued multiple security advisories (RHSA-2025:18254, 18255, 18889, 18890) addressing this flaw.
Remote denial of service in eProsima Fast-DDS v3.3.0 allows unauthenticated network attackers to crash affected processes by sending crafted input that triggers an integer overflow (CWE-190). Fast-DDS is the default DDS middleware in ROS 2, so exploitation can take down robotics and distributed control nodes without any credentials or user interaction. Publicly available exploit code exists (GitHub PoC), though EPSS remains low (0.41%, 33rd percentile) and the CVE is not listed in CISA KEV.
A Regular Expression Denial of Service (ReDoS) vulnerability exists in Fedify, a TypeScript library for building ActivityPub federated servers, where maliciously crafted HTML responses can cause catastrophic backtracking in the document loader's HTML parsing regex. The vulnerability affects versions prior to 1.6.13, 1.7.14, 1.8.15, and 1.9.2, allowing remote attackers to cause denial of service without authentication. A public proof-of-concept exploit is available, though the EPSS score of 0.13% indicates relatively low exploitation likelihood in the wild.
In Modem, there is a possible system crash due to incorrect error handling. This could lead to remote denial of service, if a UE has connected to a rogue base station controlled by the attacker, with no additional execution privileges needed. [CVSS 6.5 MEDIUM]
Nr15 versions up to - is affected by improper check for unusual or exceptional conditions (CVSS 6.5).
In Modem, there is a possible read of uninitialized heap data due to an uncaught exception. This could lead to remote denial of service, if a UE has connected to a rogue base station controlled by the attacker, with no additional execution privileges needed. [CVSS 6.5 MEDIUM]
iccDEV ICC color profile processing library versions 2.3.1 and below contain an infinite loop in the CalcProfileID function that allows unauthenticated remote attackers to cause denial of service. Public exploit code exists for this vulnerability, and affected systems should upgrade to version 2.3.1.1 or later to remediate the issue.
AIOHTTP is an asynchronous HTTP client/server framework for asyncio and Python. In versions 3.13.2 and below, handling of chunked messages can result in excessive blocking CPU usage when receiving a large number of chunks. [CVSS 5.3 MEDIUM]
AIOHTTP is an asynchronous HTTP client/server framework for asyncio and Python. Versions 3.13.2 and below allow for an infinite loop to occur when assert statements are bypassed, resulting in a DoS attack when processing a POST body. [CVSS 7.5 HIGH]
Denial of service in Anthropic's Model Context Protocol (MCP) TypeScript SDK versions up to and including 1.25.1 allows remote attackers to hang the Node.js event loop by submitting a crafted URI to the UriTemplate matcher. The dynamically built regex for RFC 6570 exploded array patterns contains nested quantifiers that trigger catastrophic backtracking, pinning CPU and rendering the process unresponsive. Publicly available exploit code exists, though EPSS is very low (0.02%) and it is not listed in CISA KEV, so real-world exploitation currently appears theoretical rather than widespread.
Coolify is an open-source and self-hostable tool for managing servers, applications, and databases. In Coolify vstarting with version 4.0.0-beta.434, the /login endpoint advertises a rate limit of 5 requests but can be trivially bypassed by rotating the X-Forwarded-For header. [CVSS 4.3 MEDIUM]
Evershop contains a vulnerability that allows attackers to exhaust the application server's resources via the "GET /images" API (CVSS 7.5).
An issue was discovered in the Camera in Samsung Mobile Processor and Wearable Processor Exynos 1330, 1380, 1480, 2400, 1580, 2500. A race condition in the issimian device driver results in a double free, leading to a denial of service. [CVSS 5.9 MEDIUM]
An issue was discovered in the Camera in Samsung Mobile Processor and Wearable Processor Exynos 1330, 1380, 1480, 2400, 1580, 2500. An invalid kernel address dereference in the issimian device driver leads to a denial of service. [CVSS 6.2 MEDIUM]
An issue was discovered in the Camera in Samsung Mobile Processor and Wearable Processor Exynos 1330, 1380, 1480, 2400, 1580, 2500. A race condition in the issimian device driver results in an out-of-bounds access, leading to a denial of service. [CVSS 5.1 MEDIUM]
An issue was discovered in L2 in Samsung Mobile Processor, Wearable Processor, and Modem Exynos 980, 990, 850, 1080, 2400, 1580, 9110, W920, W930, Modem 5123, and Modem 5400. Incorrect handling of RRC packets leads to a Denial of Service. [CVSS 7.5 HIGH]
An issue was discovered in the Camera in Samsung Mobile Processor and Wearable Processor Exynos 1330, 1380, 1480, 2400, 1580, and 2500. Improper validation of user-space input in the issimian device driver leads to information disclosure and a denial of service. [CVSS 7.1 HIGH]
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
Rejected reason: This CVE ID was rejected because it was reserved but not used for a vulnerability disclosure. No vendor patch available.
An integer underflow vulnerability exists in the `nextstate()` function in `gpsd/packet.c` of gpsd versions prior to commit `ffa1d6f40bca0b035fc7f5e563160ebb67199da7`. [CVSS 7.5 HIGH]
gpsd (before commit dc966aa) has a heap buffer overflow in the NMEA2000 satellite view handler (PGN 129540). A malicious satellite count value overwrites the skyview array, enabling code execution on GPS daemon processes. PoC available, patch available.
A buffer overflow vulnerability has been reported to affect several QNAP operating system versions. If a remote attacker gains an administrator account, they can then exploit the vulnerability to modify memory or crash processes. [CVSS 6.5 MEDIUM]
A buffer overflow vulnerability has been reported to affect License Center. If a remote attacker gains an administrator account, they can then exploit the vulnerability to modify memory or crash processes. [CVSS 6.5 MEDIUM]
A buffer overflow vulnerability has been reported to affect several QNAP operating system versions. If a remote attacker gains an administrator account, they can then exploit the vulnerability to modify memory or crash processes. [CVSS 6.5 MEDIUM]
A buffer overflow vulnerability has been reported to affect several QNAP operating system versions. If a remote attacker gains an administrator account, they can then exploit the vulnerability to modify memory or crash processes. [CVSS 6.5 MEDIUM]
A buffer overflow vulnerability has been reported to affect several QNAP operating system versions. If a remote attacker gains a user account, they can then exploit the vulnerability to modify memory or crash processes. [CVSS 8.1 HIGH]
A buffer overflow vulnerability has been reported to affect several QNAP operating system versions. If a remote attacker gains a user account, they can then exploit the vulnerability to modify memory or crash processes. [CVSS 8.1 HIGH]
A buffer overflow vulnerability has been reported to affect several QNAP operating system versions. If a remote attacker gains a user account, they can then exploit the vulnerability to modify memory or crash processes. [CVSS 8.1 HIGH]
A weakness has been identified in Open5GS up to 2.7.6. Affected by this issue is the function sgwc_s5c_handle_create_session_response of the file src/sgwc/s5c-handler.c of the component GTPv2-C Flow Handler. [CVSS 3.3 LOW]
A security flaw has been discovered in Open5GS up to 2.7.6. Affected by this vulnerability is the function ogs_gtp2_parse_bearer_qos in the library lib/gtp/v2/types.c of the component Bearer QoS IE Length Handler. [CVSS 3.3 LOW]
A vulnerability was identified in Open5GS up to 2.7.6. Affected is the function sgwc_s11_handle_create_session_request of the file src/sgwc/s11-handler.c of the component GTPv2-C F-TEID Handler. [CVSS 3.3 LOW]
Signal K Server is a server application that runs on a central hub in a boat. A Denial of Service (DoS) vulnerability in versions prior to 2.19.0 allows an unauthenticated attacker to crash the SignalK Server by flooding the access request endpoint (`/signalk/v1/access/requests`). [CVSS 7.5 HIGH]
Release of Invalid Pointer or Reference vulnerability was discovered in fs/inode/fs_inoderemove code of the Apache NuttX RTOS that allowed root filesystem inode removal leading to a debug assert trigger (that is disabled by default), NULL pointer dereference (handled differently depending on the target architecture), or in general, a Denial of Service. [CVSS 6.5 MEDIUM]
NanoMQ MQTT Broker (NanoMQ) is an all-around Edge Messaging Platform. Versions prior to 0.24.5 have a Heap-Use-After-Free (UAF) vulnerability within the MQTT bridge client component (implemented via the underlying NanoNNG library). [CVSS 4.9 MEDIUM]
Rejected reason: To maintain compliance with CNA rules, we have rejected this CVE record because it has not been used. No vendor patch available.
In the Linux kernel, the following vulnerability has been resolved: blk-cgroup: Fix NULL deref caused by blkg_policy_data being installed before init blk-iocost sometimes causes the following crash:. No vendor patch available.
A flaw has been found in omec-project UPF up to 2.1.3-dev. This affects the function handleSessionEstablishmentRequest of the file /pfcpiface/pfcpiface/messages_session.go of the component PFCP Session Establishment Request Handler. This manipulation causes null pointer dereference. The attack may be initiated remotely. The exploit has been published and may be used. The project was informed of the problem early through an issue report but has not responded yet.
Linux kernel iomap subsystem fails to allocate the s_dio_done_wq workqueue for asynchronous read operations, causing read error completions deferred by commit 222f2c7c6d14 to lack proper execution context and potentially leading to information disclosure or system instability. The vulnerability affects Linux kernel versions where the read error completion deferral was implemented without corresponding workqueue allocation for async reads. With an EPSS score of 0.01% and no evidence of active exploitation, this is a low-probability but correctness-critical issue affecting async I/O error handling on affected kernel versions.
In the Linux kernel, the following vulnerability has been resolved: NFSv4/pNFS: Clear NFS_INO_LAYOUTCOMMIT in pnfs_mark_layout_stateid_invalid Fixes a crash when layout is null during this call stack: write_inode -> nfs4_write_inode -> pnfs_layoutcommit_inode pnfs_set_layoutcommit relies on the lseg refcount to keep the layout around. Need to clear NFS_INO_LAYOUTCOMMIT otherwise we might attempt to reference a null layout.
TLS renegotiation exhaustion in Keycloak allows unauthenticated remote denial of service via repeated client-initiated TLS 1.2 renegotiation requests that drain CPU resources. Affects Red Hat Single Sign-On deployments using TLS 1.2 with client renegotiation enabled. EPSS exploitation probability and KEV status not available at analysis time; CVSS 7.5 (High) reflects network-accessible attack with low complexity but availability impact only. Red Hat has issued multiple security advisories (RHSA-2025:18254, 18255, 18889, 18890) addressing this flaw.
Remote denial of service in eProsima Fast-DDS v3.3.0 allows unauthenticated network attackers to crash affected processes by sending crafted input that triggers an integer overflow (CWE-190). Fast-DDS is the default DDS middleware in ROS 2, so exploitation can take down robotics and distributed control nodes without any credentials or user interaction. Publicly available exploit code exists (GitHub PoC), though EPSS remains low (0.41%, 33rd percentile) and the CVE is not listed in CISA KEV.
A Regular Expression Denial of Service (ReDoS) vulnerability exists in Fedify, a TypeScript library for building ActivityPub federated servers, where maliciously crafted HTML responses can cause catastrophic backtracking in the document loader's HTML parsing regex. The vulnerability affects versions prior to 1.6.13, 1.7.14, 1.8.15, and 1.9.2, allowing remote attackers to cause denial of service without authentication. A public proof-of-concept exploit is available, though the EPSS score of 0.13% indicates relatively low exploitation likelihood in the wild.